CN1330451A - Learning-type proximity detector - Google Patents
Learning-type proximity detector Download PDFInfo
- Publication number
- CN1330451A CN1330451A CN01117377A CN01117377A CN1330451A CN 1330451 A CN1330451 A CN 1330451A CN 01117377 A CN01117377 A CN 01117377A CN 01117377 A CN01117377 A CN 01117377A CN 1330451 A CN1330451 A CN 1330451A
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- China
- Prior art keywords
- detector
- mode
- learning
- processing unit
- value
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Classifications
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01B—MEASURING LENGTH, THICKNESS OR SIMILAR LINEAR DIMENSIONS; MEASURING ANGLES; MEASURING AREAS; MEASURING IRREGULARITIES OF SURFACES OR CONTOURS
- G01B7/00—Measuring arrangements characterised by the use of electric or magnetic techniques
-
- H—ELECTRICITY
- H03—ELECTRONIC CIRCUITRY
- H03K—PULSE TECHNIQUE
- H03K17/00—Electronic switching or gating, i.e. not by contact-making and –breaking
- H03K17/94—Electronic switching or gating, i.e. not by contact-making and –breaking characterised by the way in which the control signals are generated
- H03K17/945—Proximity switches
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- Physics & Mathematics (AREA)
- General Physics & Mathematics (AREA)
- Electronic Switches (AREA)
- Geophysics And Detection Of Objects (AREA)
- Measurement Of Length, Angles, Or The Like Using Electric Or Magnetic Means (AREA)
- Length Measuring Devices With Unspecified Measuring Means (AREA)
- Paper (AREA)
Abstract
A self-adaptable proximity detector delivering a binary output signal for the presence or absence of a target. The proximity detector includes a processing unit and operates according to a short learning mode for an adjustment relative to its environment, according to a long learning mode for an adjustment relative to its environment and to a target, and according to a working mode corresponding to normal operation. The proximity detector also includes a variable digital storage resistor driven by the processing unit in the learning mode and connected to the detection stage so that variation of the value of the digital resistor causes a variation of the switching threshold. In the working mode, the processing unit is in a standby state and the variable digital storage resistor remains at its set operating value.
Description
The present invention relates to a kind of learning-type proximity detector, for example the inductance type, provide target to exist or non-existent bifurcation output signal, and have for realizing with respect to target with respect to the mode of learning of the detector range self-adapting of environment.
Detection range refers in particular to the device that changes to another kind of detector from a kind of detector, and for same detector according to installing and changes in environmental conditions, be the inductance detector that is embedded into metal derby specifically.In addition, the sensitivity of some application need detector can change according to its purposes.Therefore, this is for can being useful near the detector range in its use location adjusted.
Except the mode of operation of corresponding detector normal manipulation mode, be known (referring to document EP 0740716) regulating the detector that has mode of learning between period detector.In DE4331555, also proposed by use that processing unit regulates near detector, processing unit links to each other with nonvolatile memory, by the learning phase that sampled signal caused, stores and passes through to compare the value of inside counting device and the determined switching threshold of value of sensor detection signal.In addition, in document DE4006893, constitute by the nonvolatile memory that relies on numeric word to drive several resistive elements near the adjusting of detector part, wherein only to determine the change direction of this memory by operations of operators.
The objective of the invention is to design a kind of near detector, not only can be according to the target type of being surveyed, but also can regulate the detection range, so it can different with fast adaptation automatically multiple application according to the detector total environment.Also should resemble and prevent detector too big power consumption in mode of operation desired, make can not surpass acceptable leakage current, particularly for have that the two-wire type exports near detector.This means detector should be able to not for the additive decrementation of processing unit and with the processing unit associative memory in do not store in the mode of operation according to the switching threshold of mode of learning and work.In addition, during mode of learning, when adopting simple and economic solution, the operator is important to the possibility that detector sends the feedback information of instruction and reception expression detector current state.In a word, expect that employed solution provides far-reaching miniaturization detector.
What for this reason, the present invention described comprises near detector: sensor unit can provide analog signal according to target range; Survey level, can provide by the detectable signal that comparison produced between analog signal and the switching threshold; Output stage, being used to provides detector output signal that detectable signal is strengthened and shaping; And processing unit, be used to receive detectable signal as input.This detector is to design according to the mode of learning of regulating corresponding to the detector range with according to the operation corresponding to the mode of operation of detector normal manipulation mode.It is characterized in that detector comprises the variable number memistor, by processing unit drive and with survey level and link to each other and make the variation of this variable number memistor value cause the variation of switching threshold.During mode of learning, according to the state of detectable signal, processing unit acts on the value of variable number resistor, so that determine the setting operation value of variable number resistor, wherein this setting operation value is used for during the mode of operation.During mode of operation, processing unit is in stand-by state.
In addition, detector comprises the conversion equipment that links to each other with processing unit, particularly can select mode of learning and mode of operation and can give the operator with the state notifying of detector by the operator.
The mode of learning of detector had both comprised short mode of learning, wherein only carried out the teaching of detector with respect to its environment; Also comprise long mode of learning, wherein with respect to its environment with carry out the teaching of detector with respect to the detector distance of drop target.
Describe non-restrictive example with reference to the accompanying drawings, the features and advantages of the present invention are described.
What Fig. 1 represented is near the architecture of detector according to the present invention;
What Fig. 2 represented is the simplified flow chart of describing detector mode of learning process.
Be included in the sensor unit 11 of for example inductance type in the housing 10 near detector shown in Fig. 1, be used for according to target 19 for example the distance of the metal target before the detector 10 analog signal 21 is provided.Survey level 12 analog signal 21 that provides by sensor unit 11 is provided, and with itself and switching threshold S
CRelatively, so that the bifurcation detectable signal 22 that is produced by this comparison is provided.
On the other hand, conversion equipment 30 links to each other with processing unit 15 and is directly installed on the detector 10.According to preferred embodiment, conversion equipment 30 only is made up of light-emitting diode 31, and light-emitting diode 31 is driven by the button 32 of processing unit 15 and microswitch type or arbitrary other equivalent unit, so that keep detector 10 economy and the miniaturization of solution.
Design the operation of detector 10 according to mode of learning and mode of operation.Mode of learning its objective is the adjusting of carrying out the detector range, will be described below.Mode of operation is the normal manipulation mode of detector 10, and wherein the state of output signal 23 for example disconnects or closure state, depends on the distance between target 19 and the detector 10.
Short mode of learning A
CMeaning be in the consideration environment to carry out the adjusting that detector 10 maximums can be accepted range, for example for the detector that is installed on metal or the plasticity bearing.Long mode of learning A
LMeaning be that it carries out again wherein with the adjusting of the desired position of the detection of a target practically.Therefore the range that is obtained thus can be that institute considers that the maximum of lacking very much in the environment can accept range.Because this function, can obtain the learning-type proximity detector that can adapt to different structure automatically, therefore the precision of coming the optimization detector according to the type and the employed environment of institute's detection of a target.
What Fig. 2 provided is the simplified flow chart of mode of learning process.At short mode of learning A
CAnd long mode of learning A
LIn, at first exist the environment that it doesn't matter (for example, with respect to the framework of machine, with respect to background or the like with respect to itself and target 19 ...) carry out the teaching of detector 10.For this reason, be made as limiting value R by value R as minimum value with variable number resistor 14
OMake processing unit 15 bring into operation.Processing unit 15 changes this value R equably then, for example increases it, switches and change its state up to detectable signal 22.Then analog value R is called environment detection value R
EProcessing unit 15 computing environment difference E
E=(R
E-R
O)/R
EAnd with the threshold of sensitivity S in itself and the processing unit
SCompare.
If environment difference E
ELess than this threshold of sensitivity S
S, can think that detector 10 can not have enough active redundancies, with the compliance that guarantees Electro Magnetic Compatibility standard (EMC) for example, little temperature drift or the like ... parameter commonly used.In this state, the light-emitting diode 31 of conversion equipment 30 provides out of order signal, and meaning can not the correct execution learning process (study can not OK) and processing unit 15 finishes modes of learning.
If environment difference E
EMore than or equal to threshold of sensitivity S
SAnd if selected mode of learning is short mode of learning A
C, processing unit 15 calculates and equals to deduct threshold of sensitivity S
SEnvironment detection value R
ESetting operation value R
F, R
F=R
E *(1-S
S), then before finishing mode of learning with this value of setting R
FBe provided to digital resistor 14.As long as it does not receive the arbitrary newer command that changes it from processing unit 15, digital resistor 14 is just stored this setting operation value R
F
If environment difference E
EMore than or equal to threshold of sensitivity S
SAnd if selected mode of learning is long mode of learning A
L, processing unit 15 fixes on the desired distance D of operator by diode 31 solicit operation persons with target 19
N, so that proceed the learning process of target.In case the operator has notified processing unit 15 targets 19 suitably to locate, processing unit 15 evenly changes the value R of digital resistor 14, switches and change its state up to detectable signal 22.Then analog value R is called target acquisition value R
CProcessing unit 15 calculates target difference E
C=((R
E-R
C)/R
E) and with itself and inner threshold of sensitivity S
SCompare.
If target difference E
CLess than threshold of sensitivity S
S, can think that detector 10 can not have enough active redundancies, with the compliance that guarantees Electro Magnetic Compatibility standard (EMC) for example, little temperature drift or the like ... parameter commonly used.In this case, light-emitting diode 31 provides out of order signal, and meaning can not the correct execution learning process (study can not OK) and processing unit 15 finishes modes of learning.
If target difference E
CMore than or equal to threshold of sensitivity S
S, processing unit 15 calculates and equals target acquisition value R
CSetting operation value R
FFor, R
F=R
C, then before finishing mode of learning with this value of setting R
CBe provided to digital resistor 14.As long as it does not receive the arbitrary newer command that changes it from processing unit 15, digital resistor 14 is just stored this setting operation value R
F
When mode of learning can not correctly realize (study can not OK), can not normal running under desired adjusting condition by light-emitting diode 31 direct notification operator detectors 10, and therefore can not be no matter its environment, objective attribute target attribute and required range and will keep its all properties to operator's detector of giving security.
When correct realization mode of learning (study OK), detector automaticallyes switch and returns mode of operation.Because digital resistor 14 is self-supporting, and owing to the setting operation value R from mode of learning
FDirectly be stored in the digital variable memory 14, detector 10 can be worked under the situation of not using processing unit 15 then.This is because during whole mode of operation, processing unit 15 is in stand-by state or is in the equivalent state as the wait state after " sleep " (" SLEEP ") type instruction.Therefore, can prevent that detector 10 from consuming too many electric energy and needing therefore avoiding a plurality of powerful power supplys, continues to guarantee the low current leakage level of output signal 23 simultaneously.Processing unit 15 finishes to switch to stand-by state in mode of learning, and when operator's proper handling button 32 so that when switching to mode of learning and withdraw from its stand-by state.Therefore in the mode of operation of AC or DC power supply situation, a kind of like this can making near detector consumes the maximum leakage electric current and is less than or equal to 1.5 milliamperes.This low current leakage is very favorable, and it can make detector is used the two-wire export technique.
Similarly, for in mode of operation, keeping the maximum leakage electric current to be less than or equal to 1.5 milliamperes, can be by following one or more parameter roles being come the power consumption of minimization unit 15: reduce processing unit 15 clock pulse frequency (for example less than 50 kilo hertzs frequency), reduce processing unit 15 supply voltage (for example less than 3 volts voltage), make processing unit 15 in mode of operation, enter stand-by state.
Can be expressly understood and to design the improvement of other alternative and details without departing from the present invention, and can use the equivalents of being considered.
Claims (12)
1. one kind near detector.Comprise:
Sensor device (11) can provide analog signal (21) according to the distance of target (19);
Survey level (12), can provide by analog signal (21) and switching threshold (S
C) between the detectable signal (22) that relatively produced;
Output stage (13), be used for detectable signal (22) strengthened and shaping so that output logic signal (23) to be provided; With
Processing unit (15) receives the detectable signal (22) as input;
Wherein detector (10) is to design according to the mode of learning of regulating corresponding to the detector range with according to the operation corresponding to the mode of operation of detector normal manipulation mode, it is characterized in that, detector (10) comprises variable number memistor (14), in mode of learning, drive by processing unit (15) and with survey level (12) and link to each other and make the variation of variable number resistor (14) value cause switching threshold (S
C) variation.
2. according to claim 1ly it is characterized in that, during mode of learning, for determining to be stored in the variable number resistor (14) and the setting operation value (R that during mode of operation, uses near detector
F), processing unit (15) changes the value (R) of variable number resistor (14), switches up to detectable signal (22).
3. according to claim 1ly it is characterized in that near detector when detector (10) was in the mode of operation, processing unit (15) was in stand-by state.
4. according to claim 1 near detector, it is characterized in that, detector (10) comprises the conversion equipment (30) that links to each other with processing unit (15), particularly can select mode of learning or mode of operation and can give the operator with the state notifying of detector (10) by the operator.
5. according to claim 4ly it is characterized in that conversion equipment (30) comprises button (31) and is directly installed on light-emitting diode (32) on the detector (10) near detector.
6. according to claim 4ly it is characterized in that near detector the mode of learning of detector (10) had both comprised short mode of learning (A
C), wherein only carry out the teaching of detector (10) with respect to its environment; Also comprise long mode of learning (A
L), wherein with respect to its environment with respect to the detector distance (D of drop target (19)
N) carry out the teaching of detector.
7. according to claim 6ly it is characterized in that, carry out at short mode of learning (A by conversion equipment (30) near detector
C) and long mode of learning (A
L) between selection.
8. according to claim 6ly it is characterized in that near detector come during the detector teaching with respect to its environment, processing unit (15) is made as limiting value (R with variable number resistor (14)
O), change variable number resistance (14) then up to the environment detection value (R that switches corresponding to detectable signal (22)
E).
9. according to claim 8ly it is characterized in that, according to environment detection value (R near detector
E) and limiting value (R
O) computing environment difference (E
E), if environment difference (E then
E) less than the threshold of sensitivity (S that is included in the processing unit
S), just provide fault-signal and the signal that finishes mode of learning by conversion equipment (30).
10. according to claim 9ly it is characterized in that, at short mode of learning A near detector
CIn, if environment difference (E
E) more than or equal to the threshold of sensitivity (S
S), processing unit (15) is set to setting operation value (R with variable number resistor (14)
F), it equals by the threshold of sensitivity (S
S) the environment detection value (R that reduced
E), it provides the signal and the mode of operation that automaticallyes switch back that finishes mode of learning by conversion equipment (30).
11. according to claim 9 near detector, it is characterized in that, at long mode of learning (A
L) in and target (19) is being placed on from detector (D
N) after the distance, processing unit (15) changes variable number resistor (14), until the target acquisition value (R that switches corresponding to detectable signal (22)
C).
12. according to claim 11 near detector, it is characterized in that, at long mode of learning (A
L) in, processing unit (15) is according to target acquisition value (R
C) and environment detection value (R
E) calculating target difference (E
C), if target difference (E then
C) less than the threshold of sensitivity (S that is included in the processing unit (15)
S), the signal of fault is provided by conversion equipment (30); If target difference (E
C) more than or equal to the threshold of sensitivity (S
S), it is set to equal target acquisition value (R with digital variable resistor (14)
C) setting operation value (R
F), it provides the signal and the mode of operation that automaticallyes switch back that finishes mode of learning by conversion equipment (30).
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
FR0004245A FR2807239B1 (en) | 2000-03-31 | 2000-03-31 | LEARNING PROXIMITY DETECTOR |
FR0004245 | 2000-03-31 |
Publications (2)
Publication Number | Publication Date |
---|---|
CN1330451A true CN1330451A (en) | 2002-01-09 |
CN1251409C CN1251409C (en) | 2006-04-12 |
Family
ID=8848817
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CNB011173777A Expired - Fee Related CN1251409C (en) | 2000-03-31 | 2001-03-30 | Learning-type proximity detector |
Country Status (9)
Country | Link |
---|---|
US (1) | US6594615B2 (en) |
EP (1) | EP1143620B1 (en) |
JP (1) | JP4754084B2 (en) |
KR (1) | KR100753052B1 (en) |
CN (1) | CN1251409C (en) |
AT (1) | ATE513364T1 (en) |
BR (1) | BR0101239A (en) |
FR (1) | FR2807239B1 (en) |
TW (1) | TW518824B (en) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102692628A (en) * | 2011-02-14 | 2012-09-26 | 快捷半导体(苏州)有限公司 | Adaptive response time acceleration |
CN105939153A (en) * | 2015-03-02 | 2016-09-14 | 福特全球技术公司 | Proximity switch having wrong touch adaptive learning and method |
Families Citing this family (7)
Publication number | Priority date | Publication date | Assignee | Title |
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US7346933B2 (en) * | 2001-09-05 | 2008-03-18 | Computerprox Corporation | Ultrasonic sensor component signal communication to standalone universal serial bus keyboard emulator for entry/exit computer proximity determination |
FR2832797B1 (en) * | 2001-11-26 | 2004-01-16 | Schneider Electric Ind Sa | DETECTOR FOR ROTATION CONTROL |
FR2834075B1 (en) | 2001-12-26 | 2004-02-06 | Schneider Electric Ind Sa | DETECTOR COMPRISING REMOTE DIALOGUE MEANS |
EP1376870A1 (en) * | 2002-06-19 | 2004-01-02 | Senstronic, S.A. | Proximity switch with indicating means and its method of use |
JP2005118080A (en) * | 2003-10-14 | 2005-05-12 | Ge Medical Systems Global Technology Co Llc | Radiography apparatus, collision detector, and buffer |
DE102008021732A1 (en) * | 2008-04-30 | 2009-11-05 | Carl Zeiss Sports Optics Gmbh | Weapon system and sighting device and method for a weapon system |
US9639261B2 (en) * | 2013-12-04 | 2017-05-02 | Sony Corporation | Apparatus and method for controlling a suspended state |
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IT975218B (en) * | 1972-10-11 | 1974-07-20 | Olivetti & Co Spa | PROXIMITY SENSOR |
US4299496A (en) * | 1978-11-06 | 1981-11-10 | Interlake, Inc. | Load proximity detection techniques |
DE3112560C2 (en) * | 1981-03-30 | 1983-01-27 | M.A.N.- Roland Druckmaschinen AG, 6050 Offenbach | Proximity switch which, by means of excitation and detection of a field, indicates the presence or absence of field-changing objects in a defined distance range from the proximity switch using a binary signal |
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DE4006893C2 (en) * | 1990-03-05 | 1995-11-30 | Ifm Electronic Gmbh | Inductive proximity switch |
US5367198A (en) * | 1990-06-11 | 1994-11-22 | I F M Electronic Gmbh | Proximity detector with error-preventing ambient condition compensation |
US5103085A (en) * | 1990-09-05 | 1992-04-07 | Zimmerman Thomas G | Photoelectric proximity detector and switch |
US5463333A (en) * | 1991-12-31 | 1995-10-31 | Square D Company | Proximity switches |
DE4331555A1 (en) * | 1992-09-30 | 1994-03-31 | Siemens Ag | Adjustable inductive proximity switch - uses learning mode to determine required switch function in normal operating mode |
US5410488A (en) * | 1992-11-02 | 1995-04-25 | Lorton Aerospace Company | Proximity sensor gap measuring method and apparatus |
FR2733617B1 (en) * | 1995-04-28 | 1997-06-06 | Schneider Electric Sa | LEARNING PROXIMITY DETECTOR |
DE19527174C2 (en) * | 1995-07-25 | 2002-04-18 | Balluff Gmbh | Non-contact proximity switch and method for programming it |
US5651044A (en) * | 1995-10-02 | 1997-07-22 | General Electric Company | Capacitive proximity detector for radiation imager position control |
IL125758A (en) * | 1996-02-15 | 2003-07-06 | Biosense Inc | Medical probes with field transducers |
EP0844464B1 (en) * | 1996-11-21 | 2003-05-07 | Omron Corporation | Method of and apparatus for displaying measured variables |
US6265709B1 (en) * | 1997-02-04 | 2001-07-24 | Control Products, Inc. | Apparatus and method for detecting an object using digitally encoded optical data |
US6446012B1 (en) * | 1999-06-23 | 2002-09-03 | Bfcs Technology, Inc. | Proximity detector for hard-to-detect materials |
US6208134B1 (en) * | 1999-09-30 | 2001-03-27 | Honeywell International Inc | Interference-tolerant proximity sensor system having a resonance-tracking impedance analyzer |
-
2000
- 2000-03-31 FR FR0004245A patent/FR2807239B1/en not_active Expired - Fee Related
-
2001
- 2001-03-22 EP EP01400741A patent/EP1143620B1/en not_active Expired - Lifetime
- 2001-03-22 AT AT01400741T patent/ATE513364T1/en not_active IP Right Cessation
- 2001-03-28 TW TW090107358A patent/TW518824B/en not_active IP Right Cessation
- 2001-03-29 BR BR0101239-8A patent/BR0101239A/en not_active IP Right Cessation
- 2001-03-30 KR KR1020010016882A patent/KR100753052B1/en not_active IP Right Cessation
- 2001-03-30 CN CNB011173777A patent/CN1251409C/en not_active Expired - Fee Related
- 2001-03-30 JP JP2001101379A patent/JP4754084B2/en not_active Expired - Fee Related
- 2001-04-02 US US09/822,346 patent/US6594615B2/en not_active Expired - Lifetime
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102692628A (en) * | 2011-02-14 | 2012-09-26 | 快捷半导体(苏州)有限公司 | Adaptive response time acceleration |
CN105939153A (en) * | 2015-03-02 | 2016-09-14 | 福特全球技术公司 | Proximity switch having wrong touch adaptive learning and method |
CN105939153B (en) * | 2015-03-02 | 2022-04-22 | 福特全球技术公司 | Proximity switch with false touch adaptive learning and method |
Also Published As
Publication number | Publication date |
---|---|
TW518824B (en) | 2003-01-21 |
JP4754084B2 (en) | 2011-08-24 |
US20020045998A1 (en) | 2002-04-18 |
CN1251409C (en) | 2006-04-12 |
EP1143620B1 (en) | 2011-06-15 |
KR20010095159A (en) | 2001-11-03 |
BR0101239A (en) | 2001-11-06 |
US6594615B2 (en) | 2003-07-15 |
JP2001317929A (en) | 2001-11-16 |
EP1143620A1 (en) | 2001-10-10 |
ATE513364T1 (en) | 2011-07-15 |
KR100753052B1 (en) | 2007-08-30 |
FR2807239B1 (en) | 2006-06-16 |
FR2807239A1 (en) | 2001-10-05 |
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